31733-58-1Relevant academic research and scientific papers
Boron trifluoride-methanol complex. Mild and powerful reagent for deprotection of acetylated amines. Scope and selectivity
Miltsov, Sergey,Karavan, Vladimir,Misharev, Alexandr,Alonso-Chamarro, Julian,Puyol, Mar
, p. 641 - 644 (2016)
A boron trifluoride-methanol complex demonstrated remarkable deprotection selectivity against commonly used amino-protecting groups in the deacetylation of acetanilides and high sensitivity to the steric hindrance of substrates. The scope and limitations of the reaction were explored.
Amide group-containing compounds and use for cancer treatment
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, (2020/12/07)
Therapeutic compounds containing a phenyl core and amide link(s). Also described are pharmaceutical compositions incorporating the therapeutic compounds and a method for treating cancer with the compounds. These compounds are cytotoxic to stomach, colon, breast, and leukemia cancer cell lines via dual inhibition of Src kinases and tubulin.
Pharmaceutical composition and method of treating cancer
-
, (2020/12/07)
Cytotoxic compounds containing a phenyl core, amide link(s), an imidazolinone or a propenamide moiety. Also described are pharmaceutical compositions incorporating the cytotoxic compounds and methods for treating cancer. These compounds are cytotoxic against breast, prostate, and leukemia cancer cell lines via dual inhibition of Src kinases and tubulin.
The reduction of aromatic nitro groups on solid supports using sodium hydrosulfite (Na2S2O4)
Scheuerman,Tumelty
, p. 6531 - 6535 (2007/10/03)
An improved method for reducing aromatic nitro compounds on solid-phase supports using sodium hydrosulfite is presented. Conditions have been optimized to enable the use of this reagent for reductions on both polyethyleneglycol-polystyrene (PEG) resins an
Anticonvulsant activity of some 4-aminophenylacetamides
Clark,Davenport
, p. 18 - 20 (2007/10/02)
A series of 4-aminophenylacetamides was prepared and evaluated for anticonsulvant activity. These compounds were prepared during studies designed to determine the relationship between benzamide-like compounds and anticonsulvant effects. Unlike benzamides, these phenylacetamides have a methylene group between the aromatic ring and the amide carbonyl. Consequently, formal conjugation is lost, and the number of conformational degrees of freedom has increased. The compounds were tested in mice against seizures induced by electroshock and pentylenetetrazol, and in the rotorod assay for neurologic deficit. The more active and selective anticonsulvants prepared in this study were those having an additional aromatic ring as part of the substituent on the amide nitrogen. Compound 16, the 4-aminophenylacetamide derived from 2,6-dimethylaniline, was the most potent compound observed (ED50 = 50.50 mg/kg against electroshock-induced convulsions and ED50 = 93.20 mg/kg against pentylenetetrazol-induced convulsions).
